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首页> 外文期刊>Physical Review. B, Condensed Matter >Effect of spin-orbit interaction and in-plane magnetic field on the conductance of a quasi-one-dimensional system
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Effect of spin-orbit interaction and in-plane magnetic field on the conductance of a quasi-one-dimensional system

机译:自旋轨道相互作用和面内磁场对准一维系统电导的影响

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We study the effect of spin-orbit interaction and in-plane effective magnetic field on the conductance of a quasi-one-dimensional ballistic electron system. The effective magnetic field includes the externally applied field, as well as the field due to polarized nuclear spins. The interplay of the spin-orbit interaction with effective magnetic field significantly modifies the band structure, producing additional subband extrema and energy gaps, introducing the dependence of the subband energies on the field direction. We generalize the Landauer formula at finite temperatures to incorporate these special features of the dispersion relation. The obtained formula describes the conductance of a ballistic conductor with an arbitrary dispersion relation.
机译:我们研究了自旋轨道相互作用和平面内有效磁场对准一维弹道电子系统电导的影响。有效磁场包括外部施加的磁场以及极化核自旋产生的磁场。自旋轨道相互作用与有效磁场的相互作用极大地改变了能带结构,产生了额外的子带极值和能隙,从而引入了子带能量对磁场方向的依赖性。我们在有限温度下推广了Landauer公式,以结合色散关系的这些特殊特征。所获得的公式描述了具有任意色散关系的弹道导体的电导。

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